首页> 外文期刊>Immunity >Recognition of 5' triphosphate by RIG-I helicase requires short blunt double-stranded RNA as contained in panhandle of negative-strand virus.
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Recognition of 5' triphosphate by RIG-I helicase requires short blunt double-stranded RNA as contained in panhandle of negative-strand virus.

机译:RIG-I解旋酶识别5'三磷酸需要负链病毒泛指中包含的短钝双链RNA。

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摘要

Antiviral immunity is triggered by immunorecognition of viral nucleic acids. The cytosolic helicase RIG-I is a key sensor of viral infections and is activated by RNA containing a triphosphate at the 5' end. The exact structure of RNA activating RIG-I remains controversial. Here, we established a chemical approach for 5' triphosphate oligoribonucleotide synthesis and found that synthetic single-stranded 5' triphosphate oligoribonucleotides were unable to bind and activate RIG-I. Conversely, the addition of the synthetic complementary strand resulted in optimal binding and activation of RIG-I. Short double-strand conformation with base pairing of the nucleoside carrying the 5' triphosphate was required. RIG-I activation was impaired by a 3' overhang at the 5' triphosphate end. These results define the structure of RNA for full RIG-I activation and explain how RIG-I detects negative-strand RNA viruses that lack long double-stranded RNA but do contain blunt short double-stranded 5' triphosphate RNA in the panhandle region of their single-stranded genome.
机译:抗病毒免疫是由病毒核酸的免疫识别触发的。胞质解旋酶RIG-I是病毒感染的关键传感器,并被5'端含三磷酸的RNA激活。激活RIG-1的RNA的确切结构仍存在争议。在这里,我们建立了一种化学方法合成5'三磷酸寡核糖核苷酸,发现合成的单链5'三磷酸寡核糖核苷酸无法结合和激活RIG-I。相反,合成互补链的添加导致RIG-1的最佳结合和活化。需要带有带有5'三磷酸的核苷的碱基配对的短双链构象。 RIG-I激活受到5'三磷酸末端3'突出端的影响。这些结果定义了可完全激活RIG-I的RNA结构,并解释了RIG-I如何检测缺乏长双链RNA但在其泛柄区域中确实含有钝短双链5'三磷酸RNA的负链RNA病毒。单链基因组。

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